Magnetite solubility and iron transport in magmatic-hydrothermal environments

被引:173
作者
Simon, AC
Pettke, T
Candela, PA
Piccoli, PM
Heinrich, CA
机构
[1] ETH Zentrum, Fed Inst Technol, CH-8092 Zurich, Switzerland
[2] Univ Maryland, Dept Geol, Lab Mineral Deposits Res, College Pk, MD 20742 USA
基金
美国国家科学基金会;
关键词
D O I
10.1016/j.gca.2004.05.033
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We have examined the effect of pressure on the apparent equilibrium constant, K', for magnetite solubility (Fe3O4mi + 6HCl(fluid) + H-2(fluid) + 4H(2)O(fluid)) and the relative iron-carrying capacities of magmatic vapor and brine by conducting experiments in a rhyolite melt-vapor-brine-magneticsystem at 800degreesC.f(O,) = NNO and pressures ranging from 100 to 145 MPa. Iron concentrations in synthetic vapor and brine fluid inclusions were quantified by using laser-ablation inductively-coupled -plasma-mass-spectrometry (LA-ICPMS). Hydrogen chloride (HCl) concentrations in magmatic vapor were inferred by potentiometric a(H2O) = X-H2O. of 1.7, 4.9,6.2,6.8 and 9.1 at 100, 110,130,140 and 145 MPa, respectively. The concentration of iron in magmatic vapor increases by an order of magnitude, whereas the concentration of iron in magmatic brine remains constant (within 1sigma) with increasing pressure as 800degreesC critical pressure is approached along the vapor-brine solvus. The concentrations of iron in vapor and brine fluid inclusions yield calculated partition coefficients (D-Fe(v/b)) of 0.05, 0.14, 0.27 and 0.56 at 110, 130, 140 and 145 MPa, respectively. Our data reveal that pressure fluctuations may significantly affect the value of logK'. More importantly, the data demonstrate conclusively that a significant amount of iron can be transported by a low-density aqueous vapor in the magmatic-hydrothermal environment. Copyright (C) 2004 Elsevier Ltd.
引用
收藏
页码:4905 / 4914
页数:10
相关论文
共 54 条
[1]   Solubility of excess alumina in hydrous granitic melts in equilibrium with peraluminous minerals at 700-800 °C and 200 MPa, and applications of the aluminum saturation index [J].
Acosta-Vigil, A ;
London, D ;
Morgan, GB ;
Dewers, TA .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 2003, 146 (01) :100-119
[2]   EQUATION-OF-STATE REPRESENTATION OF PHASE-EQUILIBRIA AND VOLUMETRIC PROPERTIES OF THE SYSTEM NACL-H2O ABOVE 573-K [J].
ANDERKO, A ;
PITZER, KS .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1993, 57 (08) :1657-1680
[3]  
[Anonymous], B VOLCANOLOGY
[4]  
[Anonymous], THESIS U MARYLAND
[5]   The magmatic-hydrothermal evolution of two barren granites:: A melt and fluid inclusion study of the Rito del Medio and Canada Pinabete plutons in northern New Mexico (USA) [J].
Audétat, A ;
Pettke, T .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2003, 67 (01) :97-121
[6]   Formation of a magmatic-hydrothermal ore deposit:: Insights with LA-ICP-MS analysis of fluid inclusions [J].
Audétat, A ;
Günther, D ;
Heinrich, CA .
SCIENCE, 1998, 279 (5359) :2091-2094
[7]   Causes for large-scale metal zonation around mineralized plutons:: Fluid inclusion LA-ICP-MS evidence from the Mole Granite, Australia [J].
Audétat, A ;
Günther, D ;
Heinrich, CA .
ECONOMIC GEOLOGY AND THE BULLETIN OF THE SOCIETY OF ECONOMIC GEOLOGISTS, 2000, 95 (08) :1563-1581
[8]  
BAILEY DK, 1978, PROGR EXPT PETROLOGY, P230
[9]   SUPERFLUID - A FORTRAN-77 PROGRAM FOR CALCULATION OF GIBBS FREE-ENERGY AND VOLUME OF C-H-O-N-S-AR MIXTURES [J].
BELONOSHKO, AB ;
SHI, PF ;
SAXENA, SK .
COMPUTERS & GEOSCIENCES, 1992, 18 (09) :1267-1269
[10]   MINERAL-SOLUTION EQUILIBRIA .4. SOLUBILITIES AND THE THERMODYNAMIC PROPERTIES OF FECL20 IN THE SYSTEM FE2O3-H2-H2O-HCL [J].
BOCTOR, NZ ;
POPP, RK ;
FRANTZ, JD .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1980, 44 (10) :1509-1518